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The transport of fish larvae to estuarine nursery areas: A modeling study.

机译:鱼幼体到河口育苗场的运输:一项模型研究。

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摘要

Factors controlling the movement of fish larvae from coastal spawning environments to estuarine nursery areas are important to fish recruitment. In this dissertation, the role of physical processes in larval transport to estuarine nursery areas in the Aransas Pass, Texas, region are examined using a circulation model coupled with a passive particle transport model. Two phases of transport are examined: transport on the shelf to the tidal inlet and transport through the inlet to estuarine nursery areas.; Observed pulsing in the supply of red drum (Sciaenops ocellatus ) larvae to the tidal inlet is significantly correlated with modeled particle supply. This pulsing is not correlated with a specific physical process but results from the interaction of several factors affecting water movement, including low-frequency variations in water level and wind forcing. Simulations suggest that the primary spawning region for red drum larvae that utilize nursery habitat in the Aransas Pass region is located north of the inlet. Patterns in the trajectories of particles that successfully enter the inlet reveal that the nearshore region is an important conduit for larval transport to estuarine nursery habitat.; The interaction of physical processes with bathymetry produces temporal and spatial variability in supply of particles inside the bays. The approach path of particles outside the inlet determines the spatial transport patterns for inlets with branched channels and multiple bays. High larval abundances in Aransas Bay result from a combination of high larval input, limited habitat for settlement, and proximity of habitat to the inlet. Spatial settlement patterns depend upon the developmental stage of larvae entering the inlet, with competent larvae settling along leading edges of settlement habitat and pre-competent larvae settling in more central regions.; This study demonstrates that physical processes play an important role in determining larval supply and settlement in estuarine nursery areas. These results combined with observational and modeling studies of others suggest that the transport patterns identified in this study may be a common feature for recruitment of estuarine-dependent species in other locales.
机译:控制鱼幼体从沿海产卵环境向河口育苗场移动的因素对于鱼的募集很重要。本文利用循环模型和被动颗粒迁移模型研究了物理过程在幼虫向德克萨斯州阿兰萨斯山口地区河口育苗区的运输中的作用。检查了运输的两个阶段:在架子上运输到潮汐进口,并通过进口运输到河口苗圃区。潮汐进口的红鼓幼虫( Sciaenops ocellatus )供给中观察到的脉动与模拟颗粒物供给显着相关。这种脉冲与特定的物理过程无关,而是由影响水运动的几个因素(包括水位的低频变化和风力)的相互作用引起的。模拟表明,利用Aransas Pass地区的苗圃栖息地的红鼓幼虫的主要产卵区位于进水口以北。成功进入入口的颗粒轨迹模式显示,近岸区域是幼体向河口苗圃栖息地运输的重要管道。物理过程与测深法的相互作用在海湾内的颗粒供应中产生了时空变化。入口外部颗粒的进入路径决定了具有分支通道和多个隔间的入口的空间传输模式。大量的幼虫投入,有限的栖息地栖息地以及栖息地与进水口的接近共同导致了Aransas湾幼虫的丰度很高。空间定居方式取决于进入入口的幼虫的发育阶段,有能力的幼虫沿着定居栖息地的前缘沉降,而有能力的幼虫在更中心的区域沉降。这项研究表明,物理过程在决定河口育苗区幼虫的供应和沉降方面起着重要作用。这些结果与其他观测和模型研究相结合,表明本研究中确定的运输方式可能是在其他地区招募依赖河口的物种的共同特征。

著录项

  • 作者

    Brown, Cheryl Ann.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Biology Oceanography.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 115 p.
  • 总页数 115
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋生物;
  • 关键词

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